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A Cross-Correlation-Based Time-of-Flight Design for Pulsed Chaos Lidar Systems
期刊文章

A Cross-Correlation-Based Time-of-Flight Design for Pulsed Chaos Lidar Systems

Yi-Cheng Lin, Ping-Hsuan Hsieh, Jian-Lun Hong, Yu-Hsiang Lai, Jun-Da Chen, Fan-Yi Lin, Yuan-Hao HuangPo-Chiun Huang
IEEE Solid-State Circuits Letters, 卷.5, 頁碼.138-141
2022

摘要

Chaos lidar lidar random-modulation continuous-wave (RMCW) ranging time of flight (ToF) Electrical and Electronic Engineering
This work presents an integrated circuit design of a time-of-flight module for pulsed chaos lidar systems. With a mixed-signal architecture and 1-bit digitization, the proposed design evaluates the delay in time and the corresponding distance by calculating the cross-correlation function between the two signals using a 16-unit multiplier-and-integrator array. Tunable filtering further allows resolution and dynamic range scaling. The prototype IC with 90-nm CMOS was evaluated using an in-house pulsed chaos lidar system. At 5 GS/s, experimental results demonstrate a maximum ranging error of 3.38 cm with 1- $sigma $ of 1.97 cm over a distance of 7.4 m. With the signal pulse width of 100 ns and a repetition period of 50 $mu ext{s}$ , this work consumes 113 mW under a 1-V supply.

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